Demand for better reliability from drug delivery systems has caused designers and researchers to move away from trial-and-error approaches and toward model-based methods of product development. Developing such models requires cross-disciplinary physical, mathematical, and physiological knowledge. Combining these areas under a single cover, Understanding Drug Release and Absorption Mechanisms builds a firm understanding ofall elements needed to conceive, build, and implement successful models of drug release.
Written by experts with broad industrial and academic experience, this book discusses the underlying physical principles, shows how to build mathematical models based on these principles, and finally compares the resulting models with experimental results. The authors begin by introducing the basics of modeling, physiological details of gastrointestinal and dermal absorption pathways, rheology, mass transport and thermodynamics, dissolution and partitioning, as well as size effects on the dissolution of crystallites. From this baseline, the authors explore applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes.
Working systematically from theory to working models, Understanding Drug Release and Absorption Mechanisms: A Physical and Mathematical Approach demonstrates the steps involved in designing, building, and implementing realistic and reliable models of drug release without unrealistically simplifying the theoretical parameters.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Mario Grassi, Gabriele Grassi, Romano Lapasin, Italo Colombo
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
Vendeur : Grand Eagle Retail, Bensenville, IL, Etats-Unis
Hardcover. Etat : new. Hardcover. Demand for better reliability from drug delivery systems has caused designers and researchers to move away from trial-and-error approaches and toward model-based methods of product development. Developing such models requires cross-disciplinary physical, mathematical, and physiological knowledge. Combining these areas under a single cover, Understanding Drug Release and Absorption Mechanisms builds a firm understanding ofall elements needed to conceive, build, and implement successful models of drug release. Written by experts with broad industrial and academic experience, this book discusses the underlying physical principles, shows how to build mathematical models based on these principles, and finally compares the resulting models with experimental results. The authors begin by introducing the basics of modeling, physiological details of gastrointestinal and dermal absorption pathways, rheology, mass transport and thermodynamics, dissolution and partitioning, as well as size effects on the dissolution of crystallites.From this baseline, the authors explore applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes. Working systematically from theory to working models, Understanding Drug Release and Absorption Mechanisms: A Physical and Mathematical Approach demonstrates the steps involved in designing, building, and implementing realistic and reliable models of drug release without unrealistically simplifying the theoretical parameters. Introduces the basics of modeling, relevant physiology, rheology, mass transport and thermodynamics, dissolution and partitioning, and drug solubility dependence on drug crystal size. This book also explores applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9780849330872
Quantité disponible : 1 disponible(s)
Vendeur : moluna, Greven, Allemagne
Etat : New. Mario Grassi, Gabriele Grassi, Romano Lapasin, Italo ColomboDemand for better reliability from drug delivery systems has caused designers and researchers to move away from trial-and-error approaches and toward model-based methods of product developme. N° de réf. du vendeur 898899299
Quantité disponible : 1 disponible(s)
Vendeur : Revaluation Books, Exeter, Royaume-Uni
Hardcover. Etat : Brand New. 1st hardback/cd-rom edition. 627 pages. 9.50x6.50x1.50 inches. In Stock. N° de réf. du vendeur x-0849330874
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Vendeur : AussieBookSeller, Truganina, VIC, Australie
Hardcover. Etat : new. Hardcover. Demand for better reliability from drug delivery systems has caused designers and researchers to move away from trial-and-error approaches and toward model-based methods of product development. Developing such models requires cross-disciplinary physical, mathematical, and physiological knowledge. Combining these areas under a single cover, Understanding Drug Release and Absorption Mechanisms builds a firm understanding ofall elements needed to conceive, build, and implement successful models of drug release. Written by experts with broad industrial and academic experience, this book discusses the underlying physical principles, shows how to build mathematical models based on these principles, and finally compares the resulting models with experimental results. The authors begin by introducing the basics of modeling, physiological details of gastrointestinal and dermal absorption pathways, rheology, mass transport and thermodynamics, dissolution and partitioning, as well as size effects on the dissolution of crystallites.From this baseline, the authors explore applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes. Working systematically from theory to working models, Understanding Drug Release and Absorption Mechanisms: A Physical and Mathematical Approach demonstrates the steps involved in designing, building, and implementing realistic and reliable models of drug release without unrealistically simplifying the theoretical parameters. Introduces the basics of modeling, relevant physiology, rheology, mass transport and thermodynamics, dissolution and partitioning, and drug solubility dependence on drug crystal size. This book also explores applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. N° de réf. du vendeur 9780849330872
Quantité disponible : 1 disponible(s)
Vendeur : Kennys Bookstore, Olney, MD, Etats-Unis
Etat : New. Introduces the basics of modeling, relevant physiology, rheology, mass transport and thermodynamics, dissolution and partitioning, and drug solubility dependence on drug crystal size. This book also explores applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes. Num Pages: 648 pages, 167 black & white illustrations, 39 black & white tables. BIC Classification: TN. Category: (P) Professional & Vocational. Dimension: 166 x 244 x 40. Weight in Grams: 1052. . 2006. Hardback. . . . . Books ship from the US and Ireland. N° de réf. du vendeur V9780849330872
Quantité disponible : 10 disponible(s)
Vendeur : Kennys Bookshop and Art Galleries Ltd., Galway, GY, Irlande
Etat : New. Introduces the basics of modeling, relevant physiology, rheology, mass transport and thermodynamics, dissolution and partitioning, and drug solubility dependence on drug crystal size. This book also explores applications in drug release from various delivery systems, specifically matrix systems, microemulsions, and permeability through membranes. Num Pages: 648 pages, 167 black & white illustrations, 39 black & white tables. BIC Classification: TN. Category: (P) Professional & Vocational. Dimension: 166 x 244 x 40. Weight in Grams: 1052. . 2006. Hardback. . . . . N° de réf. du vendeur V9780849330872
Quantité disponible : 10 disponible(s)